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Kymera Therapeutics Presents New Preclinical Lupus Data for KT-579, First-in-Class, Oral IRF5 Degrader, at EULAR and FOCIS Congresses

Kymera Therapeutics (NASDAQ: KYMR) reported new preclinical lupus data for KT-579, an oral IRF5 degrader.

(Moderate)

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Kymera Therapeutics (NASDAQ: KYMR) reported new preclinical lupus data for KT-579, an oral IRF5 degrader. KT-579 showed disease-modifying activity in multiple lupus models, with effects described as comparable or superior to approved and clinically active agents, and consistent modulation of Type I IFN, cytokine, and B cell-driven pathways.

The ongoing Phase 1 healthy volunteer trial is assessing safety, tolerability, PK/PD, and IRF5 degradation, with data expected in 2H26 and a patient proof-of-concept trial planned, likely in lupus.

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Positive

  • KT-579 shows disease-modifying activity comparable or superior to approved lupus therapies in preclinical models
  • Consistent modulation of Type I IFN, pro-inflammatory cytokines, and B cell-driven pathways in preclinical studies
  • Dose-dependent IRF5 degradation and inhibition of TLR7/TLR9-induced cytokine release in vivo
  • Selective IRF5 degradation and reduced inflammatory mediators in healthy donor and lupus patient-derived cells
  • Phase 1 healthy volunteer trial of KT-579 is ongoing with data expected in 2H26
  • Company plans a patient proof-of-concept trial after Phase 1, likely in lupus

Negative

  • KT-579 efficacy data are currently limited to preclinical models and ex vivo human cell assays
  • Clinical development remains at the Phase 1 healthy volunteer stage, with no lupus patient data yet
Argus Jun 8 session
-0.24% close to close Open Argus
Details

News Market Reaction – KYMR

On Jun 8, the day this news came out, KYMR closed 0.24% below the previous close.

Data tracked by StockTitan Argus for the Jun 8 session.

Key Figures

Phase 1 timing: 2H 2026 EULAR dates: June 3–6, 2026 FOCIS dates: June 9–12, 2026 +2 more
Phase 1 timing
2H 2026
KT-579 healthy volunteer trial data expected
EULAR dates
June 3–6, 2026
European Alliance of Associations for Rheumatology Annual Meeting
FOCIS dates
June 9–12, 2026
Federation of Clinical Immunology Societies Annual Meeting
EULAR presentation
June 6, 2026 10:15 AM BST
KT-579 lupus poster session timing
FOCIS presentation
June 11, 2026 7:00 PM PT
KT-579 lupus model poster timing

Historical Context

5 past events · Latest: May 27
5 events
  1. May 27

    Investor conference chat

    24h Move
    +1.1%

    Participation in Jefferies Global Healthcare Conference fireside chat webcast.

  2. May 15

    Clinical data update

    24h Move
    -2.7%

    New Phase 1b KT-621 data and ongoing Phase 2b trials in Type 2 diseases.

  3. May 06

    Investor conferences

    24h Move
    +4.3%

    Upcoming May fireside chats at major healthcare investor conferences.

  4. May 05

    Preclinical data KT-579

    24h Move
    -1.1%

    Preclinical KT-579 IBD data showing reduced disease activity and cytokines.

  5. May 05

    Leadership appointments

    24h Move
    -1.1%

    Jeito Capital leadership hires; stock reaction tracked with this news item.

24h Move is the share-price change in the day after each event; other market factors may also have contributed.

Key Terms

irf5, type i interferons, pro-inflammatory cytokines, autoantibody, +4 more
8 terms
irf5 medical
"KT-579, its potent, selective, oral IRF5 degrader, demonstrating disease-modifying activity"
IRF5 is a human gene that makes a protein acting like a cellular switchboard operator for immune signals, helping control how strongly the body mounts inflammation and antiviral responses. Investors care because drugs or diagnostics that modify IRF5 activity can change disease outcomes for autoimmune and inflammatory conditions; success or failure in targeting it can affect clinical development timelines, regulatory risk, and the commercial value of biotech programs.
type i interferons medical
"driven by multiple validated inflammatory pathways, including Type I interferons, pro-inflammatory cytokines"
Type I interferons are naturally produced proteins that act like an alarm system for the body’s defenses, signaling cells to fight viral infection and activating immune response. For investors, they matter because drugs or tests that modify these signals can affect the success of treatments, vaccine responses, safety profiles and regulatory decisions, which in turn influence clinical trial outcomes, market potential and company valuations.
pro-inflammatory cytokines medical
"including Type I interferons, pro-inflammatory cytokines and autoantibody responses"
Pro-inflammatory cytokines are small proteins released by immune cells that act like an internal alarm system, signaling the body to raise inflammation to fight infection or injury. For investors, their levels matter because they can indicate disease activity, predict adverse reactions or treatment effects, and serve as targets or biomarkers in drug development and diagnostics—factors that influence clinical trial outcomes, regulatory decisions, and commercial value.
autoantibody medical
"including Type I interferons, pro-inflammatory cytokines and autoantibody responses"
An autoantibody is a protein made by the immune system that mistakenly targets a person’s own cells or proteins, like a security guard that starts attacking the building it’s meant to protect. For investors, autoantibodies matter because they can be used as diagnostic markers, indicate safety issues for drugs, influence clinical trial outcomes and regulatory decisions, and therefore affect the market value of diagnostics and therapeutics companies.
plasmablast medical
"reduced key downstream inflammatory mediators ... as well as plasmablast differentiation and IgG production"
A plasmablast is a short‑lived immune cell that quickly produces large amounts of antibodies early in an infection or after vaccination; think of it as a temporary factory ramping up defenses. Investors care because levels of plasmablasts are measurable biomarkers used in clinical trials and regulatory reviews to show whether a vaccine or immune therapy is triggering a desired response or causing an unexpected immune reaction.
tlr medical
"blocked TLR-induced IRF5 nuclear translocation, and reduced key downstream inflammatory mediators"
Toll-like receptors (TLRs) are proteins on immune cells that act like cellular “smoke detectors,” sensing signs of infection or tissue damage and triggering an immune response. They matter to investors because they are common targets for drugs and vaccines, and findings about TLR activity or TLR-targeting therapies can affect a biotech company’s development pathway, regulatory outlook, and potential market value.
pbmcs medical
"inhibits endosomal TLR-induced responses in SLE derived PBMCs and significantly reduces"
Peripheral blood mononuclear cells (PBMCs) are the white blood cells in a small blood sample that include immune cells like lymphocytes and monocytes; they are commonly isolated and studied to see how the immune system responds to a drug or vaccine. For investors, PBMC data matter because changes in these cells can act like an early warning light—showing whether a therapy triggers the intended immune response, has safety concerns, or supports regulatory claims during development.
proteinuria medical
"led to reductions in disease-relevant biomarkers, including proteinuria, serum autoantibodies and kidney pathology"
Proteinuria is when abnormal amounts of protein are found in a person's urine. It can be a sign that the kidneys aren't working properly, since healthy kidneys usually prevent most proteins from passing into urine. Detecting proteinuria helps doctors identify and monitor kidney problems early.

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KT-579 demonstrated consistent disease-modifying activity comparable or superior to approved and clinically active therapies in multiple preclinical lupus models 

KT-579 Phase 1 healthy volunteer trial ongoing, with data expected in 2H26

WATERTOWN, Mass., June 08, 2026 (GLOBE NEWSWIRE) -- Kymera Therapeutics, Inc. (NASDAQ: KYMR), a clinical-stage biopharmaceutical company advancing a new class of oral small molecule degrader medicines for immunological diseases, today announced the presentation of new preclinical data for KT-579, its potent, selective, oral IRF5 degrader, demonstrating disease-modifying activity in lupus models. The findings show that by selectively targeting and degrading IRF5, KT-579 offers a novel oral approach for complex, heterogeneous autoimmune diseases driven by multiple validated inflammatory pathways, including Type I interferons, pro-inflammatory cytokines and autoantibody responses. These data were presented at the European Alliance of Associations for Rheumatology (EULAR) Annual Meeting held June 3-6, 2026, in London, UK, and will be presented at the Federation of Clinical Immunology Societies (FOCIS) Annual Meeting being held June 9-12, 2026, in San Francisco, CA.

“Lupus remains a complex and heterogeneous autoimmune disease, with many patients continuing to experience inadequate disease control despite available therapies,” said Juliet Williams, PhD, Head of Research, Kymera Therapeutics. “The data presented at these key medical meetings reinforce KT-579’s potential as a novel oral approach to modulating multiple disease-driving pathways implicated in lupus, including Type I IFN, pro-inflammatory cytokine and B cell-driven responses. The consistent activity observed across patient-derived cells and multiple preclinical lupus models provides strong support for IRF5 degradation as a promising strategy to broadly address the underlying disease biology with a convenient oral medicine.”

The Company previously reported data demonstrating KT-579’s compelling profile in preclinical studies using human primary cell systems, patient-derived cells and in vivo disease models of lupus, rheumatoid arthritis, and inflammatory bowel disease showing activity comparable or superior to existing standards of care.

New data presented at EULAR and FOCIS further validate KT-579’s broad and consistent activity across preclinical models of lupus. In healthy donor and lupus patient-derived human cells, with or without a common SLE-associated polymorphism, KT-579 selectively degraded IRF5, blocked TLR-induced IRF5 nuclear translocation, and reduced key downstream inflammatory mediators, including Type I IFN and pro-inflammatory cytokines, as well as plasmablast differentiation and IgG production. In vivo, KT-579 demonstrated dose-dependent IRF5 degradation and inhibition of TLR7- and TLR9-induced cytokine release, including TNFα, IL-6, IL-12 and IFNβ. Across multiple lupus models spanning low to high Type I IFN signaling, KT-579 treatment led to reductions in disease-relevant biomarkers, including proteinuria, serum autoantibodies and kidney pathology, with activity comparable or superior to approved and clinically active agents tested. Together, these findings demonstrate consistent modulation of pro-inflammatory, Type I IFN and B cell-driven pathways, supporting KT-579’s potential as a first-in-class, oral approach in lupus and other chronic autoimmune diseases.

The KT-579 Phase 1 healthy volunteer trial is ongoing. The Phase 1 study is evaluating the safety, tolerability, pharmacokinetics and pharmacodynamics of single- and multiple-ascending doses of orally administered KT-579 compared to placebo. The key study aim is to show that KT-579 can robustly degrade IRF5 in blood at doses that are safe and well tolerated. The functional impact of IRF5 degradation on the induction of Type I interferons, pro-inflammatory cytokines, and inflammatory pathway gene transcripts will also be assessed with whole blood ex vivo stimulation assays. The Company expects to report data from the trial in the second half of 2026 and, following the healthy volunteer study, plans to initiate a patient proof-of-concept trial, likely in lupus.

European Alliance of Associations for Rheumatology (EULAR)

  • Title: First-in-class Oral IRF5 Degrader, KT-579, Demonstrates Selective and Potent In Vitro and In Vivo Activity in Human Cellular Assays and Mouse Models of Lupus
  • Presenter: Veronica Campbell, Senior Director, Immunology, Kymera Therapeutics
  • Type/Session: Poster, Poster View VIII
  • Date/Time: Saturday, June 6, 2026, at 10:15 AM BST

Federation of Clinical Immunology Societies (FOCIS)

  • Title: Potent and Selective First-in-Class Oral IRF5 Degrader, KT-579, Inhibits Endosomal TLR-Induced Responses in SLE Derived PBMCs and Significantly Reduces Disease Activity in the MRL.lpr Mouse Lupus Model
  • Presenter: Erik Corcoran, Principal Scientist, Kymera Therapeutics
  • Type/Session: Poster, Autoimmune Diseases
  • Date/Time: Thursday, June 11, 2026, at 7:00 PM PT

Copies of the EULAR and FOCIS posters will be available in the Resource Library section of Kymera's website.

About KT-579
KT-579 is an investigational, first-in-class, oral degrader of IRF5, a genetically validated transcription factor and master regulator of immunity, and currently in Phase 1 testing. By selectively degrading IRF5, KT-579 is designed to modulate multiple disease-driving pathways simultaneously, including Type I interferons, pro-inflammatory cytokines and autoantibody responses, offering the potential for biologics-like activity in a convenient oral medicine. In preclinical studies, KT-579 degraded IRF5 across multiple preclinical species and in all disease-relevant tissues. In preclinical models of lupus, rheumatoid arthritis (RA), and inflammatory bowel disease (IBD), KT-579 activity was equal to or more efficacious than small molecule inhibitors and biologics currently marketed or in the clinic. In preclinical safety studies, KT-579 did not show any adverse effects of any type at all doses tested. KT-579 has the potential to be the first novel mechanism with broad utility in diseases where effective and well tolerated oral therapies are needed, such as lupus, IBD, RA, Sjögren's and others.

About Kymera Therapeutics
Kymera is a clinical-stage biotechnology company pioneering the field of targeted protein degradation (TPD) to develop medicines that address critical health problems and have the potential to dramatically improve patients’ lives. Kymera is deploying TPD to address disease targets and pathways inaccessible with conventional therapeutics. Having advanced the first degrader into the clinic for immunological diseases, Kymera is focused on building an industry-leading pipeline of oral small molecule degraders to provide a new generation of convenient, highly effective therapies for patients with these conditions. Founded in 2016, Kymera has been recognized as one of Boston’s top workplaces for the past several years. For more information about our science, pipeline and people, please visit www.kymeratx.com or follow us on X or LinkedIn.

Cautionary Note Regarding Forward-Looking Statements
This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995, as amended, including, without limitation, implied and express statements about our expectations regarding strategy, business plans and objectives on the development of our clinical and preclinical pipeline, including the therapeutic potential, clinical benefits and safety thereof, including for KT-579, the Phase 1 healthy volunteer data readout of KT-579 in the second half of 2026. The words "may," "might," "will," "could," "would," "should," "expect," "plan," "anticipate," "intend," "believe," "expect," "estimate," "seek," "predict," "future," "project," "potential," "continue," "target," “upcoming” and similar words or expressions are intended to identify forward-looking statements, although not all forward-looking statements contain these identifying words. Any forward-looking statements in this press release are based on management's current expectations and beliefs and are subject to a number of risks, uncertainties and important factors that may cause actual events or results to differ materially from any forward-looking statements contained in this press release, including, without limitation, risks associated with: uncertainties inherent in the initiation, timing and design of future clinical trials, the availability and timing of data from ongoing and future trials and the results of such trials, whether preclinical results will be indicative of the results of clinical trials, the ability to successfully demonstrate the safety and efficacy of drug candidates, the timing and outcome of planned interactions with regulatory authorities, the availability of funding sufficient for our operating expenses and capital expenditure requirements and other factors. These risks and uncertainties are described in greater detail in the section entitled "Risk Factors" in the most recent Quarterly Report on Form 10-Q and in subsequent filings with the SEC. In addition, any forward-looking statements represent our views only as of today and should not be relied upon as representing our views as of any subsequent date. We explicitly disclaim any obligation to update any forward-looking statements. No representations or warranties (expressed or implied) are made about the accuracy of any such forward-looking statements.

Investor Contact: 
Justine Koenigsberg
investors@kymeratx.com
857-285-5300

Media Contact:
Bridgette Chandhoke
media@kymeratx.com
857-285-5300


FAQ

AI-generated questions and answers. How Rhea-AI works. Not financial advice.

What did Kymera Therapeutics (NASDAQ: KYMR) announce about KT-579 lupus data in June 2026?

Kymera Therapeutics announced new preclinical lupus data for KT-579, an oral IRF5 degrader, showing disease-modifying activity across multiple lupus models. According to Kymera, activity was comparable or superior to approved and clinically active agents, with broad immune-pathway modulation.

How does KT-579 (KYMR) work as an IRF5 degrader in lupus models?

KT-579 is described as a potent, selective, oral IRF5 degrader that targets inflammatory signaling in lupus. According to Kymera, it degrades IRF5, blocks TLR-induced nuclear translocation, and reduces Type I interferons, pro-inflammatory cytokines, plasmablast differentiation, and IgG production in human cells.

What preclinical lupus results did KT-579 show compared with approved therapies for KYMR investors?

KT-579 demonstrated disease-modifying activity in multiple lupus models, with effects described as comparable or superior to approved and clinically active therapies. According to Kymera, treatment reduced proteinuria, serum autoantibodies, and kidney pathology across models with varying Type I IFN signaling.

What is the status of the KT-579 Phase 1 trial for Kymera Therapeutics (KYMR)?

The KT-579 Phase 1 healthy volunteer trial is ongoing. According to Kymera, the study evaluates safety, tolerability, pharmacokinetics, and pharmacodynamics of single and multiple oral doses, aiming to show robust IRF5 degradation in blood at safe, well-tolerated dose levels.

When will Kymera (KYMR) report KT-579 Phase 1 data and what comes next?

Kymera expects to report KT-579 Phase 1 healthy volunteer data in the second half of 2026. According to Kymera, it then plans to initiate a patient proof-of-concept trial, likely in lupus, to assess clinical potential in autoimmune disease.

What immune pathways does KT-579 target in systemic lupus erythematosus for KYMR?

KT-579 targets IRF5 to modulate several lupus-related inflammatory pathways. According to Kymera, preclinical data show consistent effects on Type I interferons, pro-inflammatory cytokines, and B cell-driven responses, including reductions in plasmablasts, IgG production, and disease-relevant biomarkers in lupus models.

Where were the new KT-579 lupus data from Kymera Therapeutics presented?

The new KT-579 lupus data were presented at the EULAR 2026 and will be presented at the FOCIS 2026 congresses. According to Kymera, detailed results appear in poster sessions, with copies available in the Resource Library on the company’s website.

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